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使用 GFP/YFP 纳米抗体亲和支架在人细胞中进行可选择的高产量重组蛋白生产。

Selectable high-yield recombinant protein production in human cells using a GFP/YFP nanobody affinity support.

机构信息

Structural Cell Biology Group, Genome Integrity and Structural Biology Laboratory, National Institute of Environmental Health Sciences, US National Institutes of Health, Department of Health and Human Services, Research Triangle Park, North Carolina, 27709.

出版信息

Protein Sci. 2018 Jun;27(6):1083-1092. doi: 10.1002/pro.3409. Epub 2018 Apr 17.

Abstract

Recombinant protein expression systems that produce high yields of pure proteins and multi-protein complexes are essential to meet the needs of biologists, biochemists, and structural biologists using X-ray crystallography and cryo-electron microscopy. An ideal expression system for recombinant human proteins is cultured human cells where the correct translation and chaperone machinery are present. However, compared to bacterial expression systems, human cell cultures present several technical challenges to their use as an expression system. We developed a method that utilizes a YFP fusion-tag to generate recombinant proteins using suspension-cultured HEK293F cells. YFP is a dual-function tag that enables direct visualization and fluorescence-based selection of high expressing clones for and rapid purification using a high-stringency, high-affinity anti-GFP/YFP nanobody support. We demonstrate the utility of this system by expressing two large human proteins, TOP2α (340 KDa dimer) and a TOP2β catalytic core (260 KDa dimer). This robustly and reproducibly yields >10 mg/L liter of cell culture using transient expression or 2.5 mg/L using stable expression.

摘要

对于使用 X 射线晶体学和冷冻电子显微镜的生物学家、生物化学家以及结构生物学家来说,能够大量生产纯蛋白和多蛋白复合物的重组蛋白表达系统是必不可少的。对于重组人蛋白来说,理想的表达系统是培养含有正确翻译和伴侣机制的人细胞。然而,与细菌表达系统相比,人细胞培养在用作表达系统方面存在一些技术挑战。我们开发了一种利用 YFP 融合标签的方法,使用悬浮培养的 HEK293F 细胞来生成重组蛋白。YFP 是一种双功能标签,能够直接可视化和荧光选择高表达克隆,并使用高严格性、高亲和力的抗 GFP/YFP 纳米体支架进行快速纯化。我们通过表达两种大型人蛋白,TOP2α(340 kDa 二聚体)和 TOP2β 催化核心(260 kDa 二聚体),证明了该系统的实用性。该系统使用瞬时表达可稳定获得超过 10 mg/L 的细胞培养物,使用稳定表达可获得 2.5 mg/L 的产量。

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